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Refined localization of three-dimensional anatomical point landmarks using multistep differential a

机译:使用多步微分a精细化三维解剖学点地标的定位

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Abstract: In this contribution, we are concerned with the detection and refined localization of 3D point landmarks. We propose multi-step differential procedures which are generalizations of an existing two-step procedure for subpixel localization of 2D point landmarks. This two-step procedure combines landmark detection by applying a differential operator with refined localization through a differential edge intersection approach. In this paper, we theoretically analyze the localization performance of this procedure for analytical models of a Gaussian blurred L-corner as well as a Gaussian blurred ellipse. By varying the model parameters differently tapered and curved structures are represented. The results motivate the use of an analogous procedure for 3D point landmark localization. We generalize the edge intersection approach to 3D and, by combining it with 3D differential operators for landmark detection, we propose three multi-step procedures for subvoxel localization of 3D point landmarks. The multi-step procedures are experimentally tested for 3D synthetic images and 3D MR images of the human head. We show that the multi-step procedures significantly improves the localization accuracy in comparison to applying a 3D detection operator alone.!14
机译:摘要:在此贡献中,我们关注3D点地标的检测和精确定位。我们提出了多步差分过程,该过程是对二维点地标的子像素定位的现有两步过程的概括。此两步过程通过使用差分算子和通过差分边缘相交方法进行精确定位的方法,结合了地标检测。在本文中,我们从理论上分析了该过程在高斯模糊L角和高斯模糊椭圆形分析模型上的定位性能。通过改变模型参数,代表了不同的锥形和弯曲结构。结果激发了对3D点地标定位的类似过程的使用。我们将边缘相交方法推广到3D,并通过将其与3D微分算子相结合来进行界标检测,我们提出了3个多步骤过程来对3D点界标进行亚体素定位。对人头的3D合成图像和3D MR图像进行了多步骤程序的实验测试。我们证明,与单独应用3D检测算子相比,多步骤过程可显着提高定位精度。14

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